# Tests are listed in order of complexity.
# They are not alphabetically sorted.
v4l2_videodevice_tests = [
[ 'double_open', 'double_open.cpp' ],
[ 'formats', 'formats.cpp' ],
[ 'request_buffers', 'request_buffers.cpp' ],
[ 'stream_on_off', 'stream_on_off.cpp' ],
[ 'capture_async', 'capture_async.cpp' ],
[ 'buffer_sharing', 'buffer_sharing.cpp' ],
]
foreach t : v4l2_videodevice_tests
exe = executable(t[0], [t[1], 'v4l2_videodevice_test.cpp'],
dependencies : libcamera_dep,
link_with : test_libraries,
include_directories : test_includes_internal)
test(t[0], exe, suite : 'v4l2_videodevice', is_parallel : false)
endforeach
ef='/libcamera/jmondi/libcamera.git/'>libcamera/jmondi/libcamera.git
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Jacopo Mondi's clone of libcamera | git repository hosting on libcamera.org |
blob: eb9354091452a419a5ea36e0024d690dbbf7526a (
plain)
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/* SPDX-License-Identifier: BSD-2-Clause */
/*
* Copyright (C) 2019, Raspberry Pi (Trading) Limited
*
* lux.hpp - Lux control algorithm
*/
#pragma once
#include <atomic>
#include <mutex>
#include "../lux_status.h"
#include "../algorithm.hpp"
// This is our implementation of the "lux control algorithm".
namespace RPi {
class Lux : public Algorithm
{
public:
Lux(Controller *controller);
char const *Name() const override;
void Read(boost::property_tree::ptree const ¶ms) override;
void Prepare(Metadata *image_metadata) override;
void Process(StatisticsPtr &stats, Metadata *image_metadata) override;
void SetCurrentAperture(double aperture);
private:
// These values define the conditions of the reference image, against
// which we compare the new image.
double reference_shutter_speed_; // in micro-seconds
double reference_gain_;
double reference_aperture_; // units of 1/f
double reference_Y_; // out of 65536
double reference_lux_;
std::atomic<double> current_aperture_;
LuxStatus status_;
std::mutex mutex_;
};
} // namespace RPi
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